Download 1.2. Seismic Configuration Manager 700 (SCM700C)

Transcript
Seismic Configuration
Manager 700 (SCM700C)
User Manual
April 2002
Windows 95, Windows 98, Windows NT and Windows 2000 are trademarks of Microsoft Corporation.
www.interlogixinc.com
Copyright
© 2001 Interlogix B.V.. All rights reserved. Interlogix B.V. grants the right to reprint this document for internal use only. Interlogix
B.V. reserve the right to change information without notice.
CONTENTS
1.
INTRODUCTION ...........................................................................................................................................3
1.1. Universal programmable seismic detector, 700-Series ................................................................3
1.2. Seismic Configuration Manager 700 (SCM700C)..........................................................................3
2.
GETTING STARTED .....................................................................................................................................4
2.1. What you will need .........................................................................................................................4
2.2. Installing the software program ......................................................................................................4
2.3. Uninstalling a program version.......................................................................................................5
2.4. The system view.............................................................................................................................5
3.
SETTING UP THE SYSTEM ...........................................................................................................................6
3.1. Language approvals.......................................................................................................................6
3.2. Communication/Comport settings ..................................................................................................6
3.3. Communication status....................................................................................................................6
4.
CONFIGURING THE DETECTORS ...................................................................................................................7
4.1. Configuration window.....................................................................................................................7
4.1.1.
Basic configuration actions (Five-step configuration) .....................................................8
4.1.2.
Application setting...........................................................................................................8
4.1.3.
Plug-in board...................................................................................................................9
4.1.4.
Sensitivity........................................................................................................................9
4.1.5.
System test ...................................................................................................................10
4.1.6.
Accessory input.............................................................................................................11
4.1.7.
Alarm Pulses Counter 5................................................................................................11
4.1.8.
Alarm Pulses Counter 6................................................................................................11
4.1.9.
Upload from detector ....................................................................................................11
4.1.10. Reset application values...............................................................................................12
4.1.11. Save to file ....................................................................................................................12
4.1.12. Downloading to the detector .........................................................................................12
4.2. Optional settings...........................................................................................................................13
4.2.1.
Alarm latch time ............................................................................................................13
4.2.2.
Remote attenuation ......................................................................................................13
4.2.3.
Integrator Warning Level ..............................................................................................14
4.2.4.
Integration time .............................................................................................................14
4.2.5.
Voltage settings ............................................................................................................14
4.2.6.
Temperature settings....................................................................................................15
4.2.7.
Inverse function.............................................................................................................15
5.
VERIFING THE DETECTOR SETTINGS ..........................................................................................................16
5.1. Counter Channels ........................................................................................................................16
5.2. Explosion Channel .......................................................................................................................17
5.3. Integrator Channels......................................................................................................................17
5.4. Real Time Signals ........................................................................................................................17
5.5. Background Signals .....................................................................................................................17
5.6. Alarm.…………………………………………………………………………………………………….18
6.
ANALYSING THE DETECTOR SETTINGS ......................................................................................................19
7.
ADVANCED FEATURES ..............................................................................................................................21
7.1. Timer ……………………………………………………………………………………………………..21
7.2. Viewing I/O (Inputs/Outputs) ........................................................................................................22
7.3. Detector info .................................................................................................................................23
7.4. Event logging................................................................................................................................23
8.
PRINTING THE RELEASE FORM ..................................................................................................................26
8.1. Print Release Form ......................................................................................................................26
8.2. Identification .................................................................................................................................27
8.3. Company logo ..............................................................................................................................27
9.
CONFIGURATION ACCESSORIES ................................................................................................................28
9.1. Configuration starters kit, VVK700C ............................................................................................28
9.2. Form A relay board.......................................................................................................................28
1
9.3.
Form C relay board ......................................................................................................................28
10.
ENGINEERING ...........................................................................................................................................29
11.
SPECIAL APPLICATIONS ............................................................................................................................29
2
1. INTRODUCTION
1.1. Universal programmable seismic detector,
700-Series
The VVS700 is a fully digital seismic detector using a microprocessor that provides 100%
digital signal analysis. Consequently the detector is completely adaptable for all types of
applications without compromising detection ability. As the detector is programmed on
site, it can be adapted to the environment and eliminate false alarms. With this new
technology, the detector can accommodate several different signal analysis programmes
in the same hardware where previously only one existed. This makes the 700-Series a
fully universal detector suitable for all known applications like safes, vaults, vault doors,
ATM’s, night safe deposit boxes, weapon stores, etc..
The seismic detector reacts to the characteristic vibration patterns of all breaking-andentering tools, such as hammers, drills, diamond saws, hydraulic pressure tools and
thermal tools, such as welding torch and thermal lance. It can sense vibrations that occur
within a 3 to 14 meter radius of where they are mounted, depending on the material and
design of the protected object.
1.2. Seismic Configuration Manager 700 (SCM700C)
The Seismic Configuration Manager 700 (SCM700C) is a software program for the
programmable seismic detector VVS700. With this program you can adapt the seismic
detector to all the different types of objects that you want to protect. You have 100%
flexibility with only one detector that you can program to apply to different materials,
environments, etc..
The program is easy to install on your laptop. It gives you access to many new features,
such as background signal levels, verification of the detector settings, etc., to help avoid
false alarms and to achieve the highest performance in signal detection.
3
2. GETTING STARTED
2.1. What you will need
As well as the programmable seismic detector and the SCM700C program, you need a
configuration cable VVI740 to be able to communicate between the detector and your
laptop. A serial communication port, RS232, is required on your laptop. The configuration
cable VVI740 is the only tool that the installer needs when configuring the detector.
The programmable seismic detector lets you add customised plug-in boards. The plug-in
board connector complies with the IEC standard 839-2. When the detector is installed in
an application, there must be a plug-in board connected. The plug–in board determines
the functionality at the screw terminals of the detector. For available plug-in boards,
contact your distributor. A plug-in board is not required to communicate between the
detector and the SCM700C program.
VVS700 =
SCM700C =
VVK700C =
VVI760 =
Universal programmable vibration detector
”Seismic Configuration Manager 700” software
Configuration starters kit. Consists of the configuration cable
(VVI740) and the configuration software (SCM700C).
Form A relay board (or VVI770 Form C relay board)
The programmable seismic detector must have a plug-in board (1) connected to the
detector. Connect the plug-in board to the detector header (2). Use the configuration
cable VVI740 (4) to enable the detector and your computer to communicate. Wire the 5pole connector on the VVI 740 to the communication port of the detector (3) and the 9pole connector to the serial port (RS232) of the computer (5).
2.2. Installing the software program
The Seismic Configuration Manager 700 (SCM700C) is supplied on a CD-ROM. The
program works on Windows 95, 98, NT and 2000. If you already have a previous version
of the SCM700C program installed on your computer, this version must be uninstalled
before installing a new version. See Section 2.3.
Place the CD-ROM in the drive and wait at least 10 seconds. The installation program
“Setup.exe” runs automatically. Follow the instructions on the screen and enter the
information requested. You should now be able to see the SCM700C icon on your
desktop. Double-click to run the program. See also the instructions included on the
SCM700C CD-ROM.
4
2.3. Uninstalling a program version
If you already have a previous version of the Seismic Configuration Manager 700
(SCM700C) installed, please uninstall this version before you install an updated program
version. Select <Start>, <Settings>, <Control Panel>, <Add/Remove Programs> and
remove the old SCM700C version you have.
2.4. The system view
The program is Windows based and you will recognise the layout with pull-down menus
in the menu bar and in some boxes. You reach all features and functions through the
menu bar at the top. Icons represent special functions, which can be activated by a
mouse click. A commando line at the bottom of the screen informs you about required
actions and already selected settings.
Available functions are an “Eraser” that will empty/clear the boxes or clear the detection
channels.
At the bottom right corner of the program there is a “Return” button that returns you to the
previous window or to the pause screen.
5
3. SETTING UP THE SYSTEM
The first time you use the configuration program SCM700C, set-up the system according
to your requirements. The settings will be stored in the program so you only have to do
this once. Start the program and select <Setup> in the menu bar. Several options
become available that allow you to set-up the software for your needs.
3.1. Language approvals
By default the software starts in English. Under
<Setup>, <Languages/Approvals> in the menu bar you
will find a list with the following languages available for
this program; English, Dutch, German, Swedish,
Danish, Italy, Spanish, French and Polish. Select one
language that you want the program to use in the future
(default setting is English).
If you have any special approval requirements for your
market, you can also choose between the following
approval standards; NFA2P, VdS, IMQ, ANPI, SBSC,
Skafor, CAPP, FG, Techom, SCB and UL/CUL. Selecting
an approval will assure that all the selected models are
configured with approved characteristics and sensitivity.
Please note that some of the settings can be automatically
changed to meet the selected approval requirements. Click
<Update> after you have made your changes. If no
approval standard is required select <None>. The
commando line at the bottom of the screen will confirm
your selected approval standard.
3.2. Communication/Comport settings
Under <Setup>, <Communication> select the comport setting
that is required on your computer. Click <Update> after you have
made your changes. Default COM1 is selected. Communication
between the detector and the PC requires the following settings:
Comport:
Baud rate:
Data bits:
Parity:
Stop bits:
1, 2, 3, or 4 (depending on your computer)
9600
8
None
1
3.3. Communication status
You can always see the communication status between the detector and your laptop at
the Communication Status indicator in the bottom right corner on the screen. If you have
no communication, check that the configuration cable is properly connected to both
detector and laptop and that you have 12 VDC to the detector (screw terminal 1 and 2).
Green light = communication OK
Red light = no or lost communication
6
When the program is started with no detector connected, there is a communication error
message. When the communication is available, this message disappears automatically
and the communication status indicator turns green.
The next time communication is lost, there will be a communication error message that
will not disappear automatically. This error message needs to be confirmed before the
program tries to set-up the communication again. This assures that the operator is aware
of the communication lost and knows that the previous tests are invalid.
When communication is not achieved, select <Setup>, <Communication> and change the
comport setting. Check if the other variables match with the settings mentioned in Section
3.2.
4. CONFIGURING THE DETECTORS
The programmable seismic detector is supplied default programmed. This results
in a (configuration) fault signal. Follow the configuration instructions to program the
detector for your application.
4.1. Configuration window
To enter the Configuration window, select <Configure> in the menu bar. This window will
always be empty when you enter. The commando line in the bottom left corner tells you
the status of the displayed window.
7
There is several ways to continue:
1. Select <Upload from Detector> to read the settings of the detector connected to the
PC. All variables will be updated.
2. Select a “Pre-programmed” detector model from the <Application setting> menu box.
All variables will show the default model settings.
3. Select <Reset application values>. All variables will show the 700 default settings.
The selected variable can be programmed into the detector by selecting <Download to
Detector>. You can save the detector settings under <Save to File>. These settings are
stored on the hard disk of the computer.
4.1.1. Basic configuration actions (Five-step configuration)
The following (minimal) steps are required to program a detector:
1. Select <Configure>
2. Select a <Application setting>
3. Select a <Plug in board>
4. Change the sensitivity <Sensitivity>, if necessary.
5. Press <Download to Detector>
The detector is now ready for use.
4.1.2. Application setting
In the <Application setting> box select the detector type that is best suited for your
application. All 700 detector types listed have pre-programmed application settings.
These settings are approved by the approval agency selected in <Setup>,
<Languages/Approvals> (see Section 3.1).
700 Vault and Safe Application
Protect any solid structure like vaults, vault doors, safes, weapon cabinets, etc.
701 (TNO) Vault and Safe Application
Protect vaults and safes with increased sensitivity in accordance to the TNO norm.
702 ATM and Night Deposit Box Application
Protect Automatic Teller Machines (ATM’s), night safe deposit boxes and any object that
creates vibrations and knockings in normal operation.
703 Lightweight Vault and Safe Application
Protect lightweight safes with adjustable frequency and amplitude scale.
704 Lightweight ATM and Night Deposit Box Application
Protect ATM’s and night safe deposit boxes of lightweight material
CUSTOM Special/Customised Application
This option give access to Customer Model files (*.cmf). When the operator saves a
detector setting (see Section 4.1.11) it is possible to recall (load) this setting with this
8
option. Select “CUSTOM” and a window appears. This window shows all CMF-files
available.
Note: All CMF-files are variant of the approved application settings. Therefore any
CMF-file that can be generated by the operator will be an approved application
setting.
4.1.3. Plug-in board
Select one of the options in the pull down menu <Plug-in Board> that correspond to the
plug-in board being used:
· Relay board
Form A relay board (VVI760)
Form C relay board (VVI770)
· PID-Transponder
The plug-in connector applies to the IEC standard 839-2. Any third party transponder
can be used. Contact your local distributor for additional information.
· CUSTOM
For customised hardware solutions, contact local distributor for information.
4.1.4. Sensitivity
Set the sensitivity by selecting one of the options in the <Sensitivity> box. There are five
incremental steps available of 6 dB each. By looking in the Verify window, you can adapt
the detector to the object you want to protect. See Section 5 for further information. The
default setting is GREF (100%).
9
4.1.5. System test
There are three test-modes available in the Configuration window. Select the test mode in
the <System Test> box that is best suited for your installation:
· Automatic Test
The detector performs automatically five self-tests every 24 hours. No external action
is necessary. The test interval times are randomly selected by the SCM700C program
and downloaded in the detector. This self-test requires a Test Transmitter installed in
the detector. The detector drives the test transmitter internally. When vibrations are
detected the self-test is successful and no action is taken. If the detector does not
sense any vibrations, the fault output is activated. The fault stays activated until the
next successful test.
· Remote Test
This self-test requires a Test Transmitter installed in the detector. The test is
controlled externally, manually or by the control panel. Refer to the plug-in board
manual on how to activate the self-test manually.
When the self-test is activated, the detector drives the internal test transmitter. When
vibrations are detected, the self-test is successful and the alarm output is activated. If
the detector does not sense any vibrations, the fault output is activated. The fault
stays activated until the next successful test.
· Range Test
This self-test requires no Test Transmitter. Vibrations are generated with an external
Hand Held Tester or the more powerful Range Tester. The test is externally controlled,
manually or by the control panel. Refer to the plug-in board manual how to activate the
self-test manually.
When the self-test is activated, the detector waits until a vibration is detected. When
vibrations are detected the self-test is successfully and the alarm output is activated.
If the detector does not sense any vibrations no action is taken. The alarm signal will
reset after “alarm latch time” is expired (see Section 4.2.1).
Application area:
This test is normally used to simultaneously test more than one detector in an
installation. For example, an object is protected with four detectors. All detectors are
configured with “Range test”. The control panel activates the test mode (parallel line
for all detectors) and activates the Range Tester. After a pre-determined time all
detectors should detect the vibrations and report it to the panel by activating the alarm
output.
10
4.1.6. Accessory input
The programmable seismic detector has an auxiliary input (screw terminal 3). This input
acts like an external tamper switch. When this input is enabled, an alarm signal will be
activated. This input can be used to connect one of the accessories available for the 700series.
If you want to install the detector together with either a Day/Night Plate or a Keyhole
Protection Kit, you must select <Enabled> in the <Accessory Input> box (default setting is
"Disabled").
4.1.7. Alarm Pulses Counter 5
The application settings 700 and 703 have a pulse counter channel feature. Select the
number of actual pulses that you want the detector to detect before it triggers an alarm.
You can choose between 2-25 pulses. Default setting is five pulses. This detector box
cannot be changed when other detector types are selected.
4.1.8. Alarm Pulses Counter 6
The application setting 701 has a special pulse counter channel feature, which is in
accordance with the TNO norm. Select the number of actual pulses that you want the
detector to detect before it triggers an alarm. You can choose between 2-25 pulses.
Default setting is five pulses. This detector box cannot be changed when other detector
types are selected.
4.1.9. Upload from detector
Each time the operator enters the Configuration window, all
boxes are empty. To receive the actual settings of the
attached detector, press <Upload from detector>. The
SCM700C program loads the settings of the detector and
immediately updates all boxes.
After an upload, the command line (left bottom corner of the
screen) will mention “Detector readings”. Consequently you
can easily see the current settings on each detector.
11
4.1.10. Reset application values
If you click the box <Reset application values> the program automatically chooses a
specific setting. This default setting is there to help Technical Support and to give you and
the Help Desk the same starting point. The default setting is that of the 700 application
setting.
4.1.11. Save to file
The operator can save a particular setting. If there are several detectors, which have
specific settings that differ from the default application settings, these settings can be
programmed and then saved on the hard disk of the PC. These files are called “Customer
model files” and will have the extension *.CMF. To save the settings on a disk, select
<Save to file>. Enter a filename and select <Save>. This file can be loaded with the
option <CUSTOM> in the <Application setting> box (see Section 4.1.1).
4.1.12. Downloading to the detector
When all the settings for your installation are selected, click the <Download to detector>
box to save the settings into the detector. The program notifies you that the settings of the
connected detector will be lost and replaced with the settings that are currently selected
in the SCM700 program. The following message appears: “This command overwrites the
current EEPROM settings, start download?” select <Yes>. When this message is
acknowledged, a “Download progress bar” appears, which shows the progress of the
downloading.
All changes made to the settings in both Configuration window and under <Optional
settings> are downloaded to the detector by clicking the box <Download to detector>.
12
4.2. Optional settings
Select <Optional settings> in the Configuration window and you can change even more
settings to further adapt the detector to your specific installation. These settings are
optional. If you choose not to do any changes in this window, the program automatically
selects the default settings shown in the adjacent window. All setting changes made
under <Optional settings> downloaded to the detector by clicking the box <Download to
detector> in the Configuration window.
4.2.1. Alarm latch time
The alarm latch time is the time that the alarm output is activated after an alarm condition.
When the time has expired, the alarm output returns to a “NON-alarm” state. The
communication panel of the security system will latch the alarm signals until action has
been taken. In the <Alarm Latch Time> box, you can change the alarm latch time from 0
to 120 seconds. Default setting is 3 seconds.
4.2.2. Remote attenuation
The Remote Attenuation function prevents false alarms when you want to protect objects
that generate internal vibrations during normal operation, for example, an Automatic
Teller Machine (ATM). By selecting one of the options in the <Remote attenuation> box,
you temporally reduce the sensitivity. Each step lowers the sensitivity by 6dB. Default
setting is <NONE (100%)>, which means there is no reduced sensitivity. The moment
and time period of the sensitivity reduction is externally controlled. The protected
installation / machine should be able to activate the remote sensitivity input. Please refer
to the plug-in board manual on how to operate the sensitivity input (screw no 14).
13
Note: Application settings 702 / 704 have specially designed integrator channels
for ATM applications which take into account the characteristic signals produced by
this type of equipment. Only use the remote attenuation feature when default
application settings are not applicable.
4.2.3. Integrator Warning Level
In the <Integrator Warning Level> box you can select when the detector should give a
pre-alarm. You can select between 0-100 %. Default setting is 75%, which means that
when the activated integration channels have reached 75% of their threshold the detector
will give a pre-alarm as a warning. Please refer to the plug-in board manual to see if it
supports warning signals.
4.2.4. Integration time
If you want to change the integration time (time to alarm), select <200%> in the
<Integration time> box. It will now take approximately twice as long before the detector
reaches the alarm threshold. Default setting is <100%>.
4.2.5. Voltage settings
The detector triggers a sabotage alarm if the voltage goes below or over the selected
voltage settings. You can set the voltage between 8.0 V to 16.0 V. Default setting is 8.5 V
– 14.0 V.
14
4.2.6. Temperature settings
The detector triggers a sabotage alarm if the temperature goes below or over the
selected temperature settings. You can set the temperature between -20ºC and +85ºC.
Default setting is -15ºC to +83ºC.
4.2.7. Inverse function
The inverse function makes four inputs/outputs polarity changeable on the detector;
accessory input (screw 3), Day /night mode (screw 12), test transmitter input (screw 13)
and remote attenuation (screw 14). To change the polarity just click the <N> (Normal) or
<I> (Inverse) box. This option is only available when the relay board is selected as a plugin board, see section 4.1.3.
15
5. VERIFING THE DETECTOR SETTINGS
This window verifies the application settings downloaded to the detector in the
Configuration window. You can adapt the detector to the object you want to protect by
using this feature. If you test the detector installation by using a Hand Tester, you can see
how the detector is reacting in real-time on manually applied vibrations. If the detector is
too sensitive, return to the Configuration window and reduce the sensitivity to avoid false
alarms.
Note: Do not forget to first download your changes in the Configuration window to
the detector, as otherwise you will not see any changes in the detector’s
performance.
5.1. Counter Channels
The Counter Channel only shows the activated channel depending on
which application setting you have selected in the Configuration window.
Counter channel 5 is activated when the application settings 700 and
703 are selected. Counter channel 6 is activated when application setting
701 is selected. When the detector detects a pulse, it starts to count (the
blocks light up) until the detector has reached the alarm level. The
counter channel that is not activated is grey scaled. The counter channel
also looks different depending on the number of pulses selected. The
yellow blocks show the warning area and the red block shows the alarm.
The picture shows the default setting for the detector type 700 with five
pulses. Two pulses have been detected.
16
5.2. Explosion Channel
The Explosion block will turn red when the detector is detecting an
explosion.
5.3. Integrator Channels
The Integrator Channels only shows the activated channel depending on which
application setting you have selected in the Configuration window. Integration channel 1
is activated when application settings 700, 701 and 703 are selected. Integrator channels
2 and 3 are activated when application settings 702 and 704 are selected. When the
detector detects a vibration, it starts to integrate (the area lights up) until the detector has
reached the alarm level. The integrator channel that is not activated is grey scaled. The
integrator channel also reacts differently depending on which sensitivity settings and
detection time selected in the Configuration window. The yellow blocks shows the
warning area and the red block shows the alarm.
The picture shows the default setting for the application setting 700 with 75% warning
level.
5.4. Real Time Signals
The Real Time Signals bars show the strength of the vibrations detected. When these
signals become too strong, there is a risk of the detector starting to integrate and
eventually triggering an alarm. The window shows two different detection signals. One
signal applies to the high sensitivity (HS) channels, the other to the low sensitivity (LS)
channels. The HS is used for the integrators and the pulse counter 6 and the LS is used
for the pulse counter 5 and the explosion channel. Both channels are analysed and can
trigger an alarm.
It is recommended that you try to remove the source of ambient noise instead of reducing
the sensitivity
5.5. Background Signals
The VVS700 detector is designed to detect very weak signals (thermal lance attacks). If
the detector is too sensitive, the detector may start to integrate due to background
vibrations. External machinery, traffic, etc. can cause background vibrations.
If the background signals are too strong, the detector starts to integrate or count pulses.
When the background signal indicators turn blue, the corresponding integrators and/or
counters are activated and eventually will cause false alarms.
17
This means you must remove the source of ambient noise or adjust the sensitivity so that
when it is in a quiet state (no external vibrations applied only “environmental” vibrations),
the background signal indicators do not turn blue.
5.6. Alarms
The selection of events that can be detected by the detector is listed horizontally. A signal
is generated when:
Tamper:
Aux:
Temperature:
Voltage:
Checksum:
Self-test:
Configuration:
Combined tamper and pry-off
An event is detected on the auxiliary input (see Section 4.1.6)
Maximum and minimum temperature limits exceeded (see Section
4.2.6)
Maximum and minimum voltage limits exceeded (see section
4.2.5)
The settings of the detector are corrupted. The settings
programmed in the detector are verified every 24 hours.
The self-test has failed.
When the programmable seismic detector leaves the factory it is
default programmed. If the operator has not programmed the
detector, a configuration error signal is generated.
The selection of output signals is listed. The events can be directed to one of the four
outputs: Alarm, Sabotage, Warning and Fault.
A grey indicator indicates that the event is selected. When the indicator turns red, the
event is detected and signalled on the selected output. In the picture below Tamper is
signalled on the sabotage output.
18
6. ANALYSING THE DETECTOR SETTINGS
The Analyse window memorises all peak signal values of the detector from the time of
activation. Select <Analyse> in the menu bar to reach it. You can always access the
Analyse Window and reset the peak values.
The Day / Night mode is linked to the Arm / Disarm function of the control panel. When
the Night mode (armed) is activated, there will be a “moon” in the “Start Analysing Time”
box. When the Day mode (disarmed) is activated, it will be a “sun”. To reset the time/date
stamp, click the erasure button. The date/time stamp is stored in the detector’s memory.
This “local” resetting of the Analyse Window functions is independent of the Day / Night
mode.
If the detector switches from Night mode to Day mode, the values/events are frozen (not
reset). Events that occur when the detector is in Day mode are NOT memorised. This
allows the installer to open the detector and read the memory content without changing
the peak values.
Note: The 24-hour alarm loop need to be disabled when the installer open the
detector in order to prevent a sabotage alarm generated by the tamper switch
when the cover is removed from the detector.
These (peak) signals are stored in the detector. The PC and the SCM700C software do
not have to be connected to the detector in order to use this function. When the detector
is powered down, the analysed information is lost.
19
Installing
Install, Wire,
and Power-up
Connect
VVI740
Configure,
Verify,
Reset analyze
Daily
Unfreeze
Memory
Activate
Day mode
Y
Service
N
Disarm
24-hour loop
(remote)
Open Cover.
Connect VVI740
Remove
VVI740
Analyze
Y
Close cover
RESET
(local?)
N
Y
Freeze Memory
(all seismic activities
are NOT
memorised)
Remove
VVI740 Close
Activate
24-hour loop
(remote)
Arm
24-hour loop
(remote)
N
Detector
in operation
Activate
Night mode
20
Unfreeze Memory
7. ADVANCED FEATURES
There are several advanced features under <Tools> in the menu bar that will help you
optimise the installation and performance of the detector. There are also tools available
for more detailed on-site performance measurements.
7.1. Timer
Select <Tools>, <Timer> in the menu bar. In the Timer window you can test the detector
with a stopwatch.
The “Real Time Signal” bar shows the vibration strength as measured by the detector.
This is the same signal as shown in the Verify window. With the “Timer start threshold”
the operator can select a signal strength that corresponds to the real time signal strength
shown in the “Real Time Signal” window. When the measured signal strength exceeds
the threshold level (for example, caused by a Hand Held Tester), the "Timer" function is
activated.
All available integrators / counters can be watched during the test. Only activated signals
are displayed (this depends on the “Application setting” selected in the Configuration
window).
Start the test by clicking the green light in the <Start/Stop> box. The test is activated but
the timer only starts when the “Real Time Signal” strength indicator exceeds the threshold
level. Apply vibrations manually with a Hand Tester. The results of the applied vibrations
are shown in the <Detector Signals> box. When the detector goes into alarm, the
stopwatch automatically stops and you can easily see the “Time to Alarm”. If you are
unhappy with the result, return to the Configuration window by selecting <Configure> in
the menu bar and adjusting the settings. Do not forget to download the changes by
clicking the >Download to Detector> box.
21
To stop the test before the detector triggers an alarm, click the red light in the
<Start/Stop> box. If you want to clear all the boxes after the test, click the “Eraser” box.
7.2. Viewing I/O (Inputs/Outputs)
Select <Tools>, <View I/O> in the menu bar. The <I/O View Window> shows the actual
status of the input and output signals in real-time. The simulation of these input / output
signals depends on the selected plug-in board. The picture shows the simulation of the
input and output signals when a relay board is selected as plug-in option. A red indicator
indicates that an event is present/active.
In the <Temperature Reading> box you can see the actual temperature of the detector
and the temperature settings. If you want to change the temperature settings, see Section
4.2.6. In the <Volt Reading> box you can see the actual voltage and the voltage settings.
If you want to change the voltage settings, see Section 4.2.5.
Note: Temperature and voltage readings are approximately correct within a slight
tolerance.
22
7.3. Detector info
Select <Tools>, <Detector Info> in the menu bar. The <Detector Readings> box provides
information on the detector, such as production date, production number and the firmware
version in the detector. This is the unique serial number for the detector.
7.4. Event logging
Event logging is a feature that logs all detector events in a log file. The PC and the
SCM700C software need to be connected to the detector during the evaluation period.
Events are defined as:
· Increase / decrease of pulse counters
· Increase / decrease of integrators with a “delta” of 10%
· The transition of integrators into warning area
· Alarm of integrators / counters
· Activation of output signals like:
1.
2.
3.
4.
Alarm
Sabotage
Warning
Fault
This log-file (*.ELF) can be imported into EXCEL. To activate the event
logging, select <Tools>, <Event logging> in the menu bar. A mark in front
of the <Event Logging> appears when it is activated. In the command
line, the text “ Event logging” alerts the operator that the event logging is
activated. The program now automatically stores all activities from the
activated channels in a log file. To stop the event logging, select
<Tools>, <Event logging> again in the menu bar and the mark will
disappear.
To open this log file, go to Excel. Select <File>, <Open> (the log files are located in the
“Files” folder of the SCM700C software). This folder is located in the directory C:\program
files\SCM700C\files. The log file is stored in *.elf format and you must select <All files
(*.*)> in the <Files of Type> box to see it. Double click the <log.elf> file and a message
box called “Text import Wizard” appears. To convert the log file into Excel format:
Step 1:
· Select <Delimited>
· Click <Next>
23
Step 2:
· Select <Tab> and <Comma>
· Click <Next>
Step 3:
· Select <Date>. The pull down menu shows <MDY>
· Click <Finish> to convert the file to Excel format
24
The columns show: Date, Time, Alarm output, Sabotage output, Fault output, Warning
output, Pulse counter 5, Pulse counter 6, Integrator 1, Integrator 2, Integrator 3, and both
High and Low Real Time Signal strength.
The values shown in the columns C to F are event codes. For example, line 8 shows that
the warning output is activated. Code 100 means that this is caused by pulse counter 5
that exceeded the warning threshold (default at 4 counts). In line 9 the alarm output is
activated. Again pulse counter 5 caused this event (code 100).
The next time you make an event logging, the program will overwrite the old log file with
the new file if you do not choose to save the old file under a new name. The log data will
always be saved in the file log.elf. This file is located by default in the folder: C:\program
files\SCM700C\files.
25
8. PRINTING THE RELEASE FORM
The Release Form is a document that shows all the settings of the detector when the
programming is completed. It can be printed direct or saved to a file and should be signed
by the installer. This document confirms the installation and the detector settings for the
customer.
8.1. Print Release Form
Select <File>, <Print Release Form> in the menu bar. The document shows the following
settings that you have programmed into the detector and detector information:
· Released On
· Firmware Version
· Production Date
· Production
Number
· Application
setting
· Approval
· Sensitivity
· Remote
Attenuation
· Plug-in Board
· System Test
· Counter 5
· Counter 6
· Alarm Latch Time
· Integration Time
· Warning Level
· Temperature Low
· Temperature High
· Voltage Low
· Voltage High
· Aux
· Comment
You can both print or save the document on your laptop or on diskette. To return to the
Configuration programme, select <Close> in the menu bar.
You can personalise the Release Form by including a name identification or a company
logo. Follow the instructions in Sections 8.2 and 8.3.
26
8.2. Identification
To personalise the Release Form with your name and company address, select <Setup>,
<Identification> in the menu bar. Fill in the information you want to be added to the
Release Form and click<Update>.
8.3. Company logo
To print the company logo on the Release Form, select <Setup>, <Options> in the menu
bar. Select the “Open file” icon to enter your Windows Explorer and select the logo file
you wants to use by clicking <Open>. The file name appears in the Logo window. Update
the Release Form with this information by clicking <Update> in this box. To remove a
logo file, click the “eraser” icon.
Note: The logo should comply with the following standards:
· JPG format
· (The picture will scale automatically)
27
9. CONFIGURATION ACCESSORIES
9.1. Configuration starters kit, VVK700
The configuration cable VVI740 enables the detector and the computer to communicate.
A serial communication port, RS232, is required on your laptop. The cable is the only
installation tool that the installer needs when configuring the detector. Supplied with the
cable is the Seismic Configuration Manager 700 (SCM700C), the software program.
9.2. Form A relay board
The VVI760 is a Form A relay board with a plug-in connector to connect the relay board
to the detector header. The connection diagram applies to VVS700 screw terminal
9.3. Form C relay board
The VVI770 is a Form C relay board with a plug-in connector to connect the relay board
to the detector header. The connection diagram applies to VVS700 screw terminal.
28
10. ENGINEERING
This section is not available to the installer / customer.
A password is required to enter this section. Passwords can be requested but will only be
granted to Interlogix employees who have attended the “Advanced SCM700C
applications” course.
Access will be registered by name with a personal password.
11. SPECIAL APPLICATIONS
The 700 Series allows the hardware to be adapted to almost any application. There are
five default application settings. These settings are tested and approved by various
approval agencies. These default detector types are optimised for vault, vault doors,
safes, ATM’s, Night Safe Deposit Boxes, Weapon Stores, Filing Cabinets, etc.. However,
these detector types could also be useful for other applications.
If there is an application area where the default detector types are NOT sufficient, contact
your local distributor. They can arrange a meeting with a specialised seismic engineer to
discuss the possibilities. The 700 Series can also be reprogrammed in the most cases for
your special needs.
Special requests can range from sensitivity changes, input / output signal configurations,
signal polarity changes, etc. These requests will be tested and a special Customer Model
File will be generated for your application. These customised detector settings can then
be loaded as described in Section 4.1.11.
29
14 5578 999-0